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PUBMED FOR HANDHELDS

Journal Abstract Search


693 related items for PubMed ID: 24462810

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  • 25. Long-term surgical outcome and risk factors in patients with cervical myelopathy and a change in signal intensity of intramedullary spinal cord on Magnetic Resonance imaging.
    Yagi M, Ninomiya K, Kihara M, Horiuchi Y.
    J Neurosurg Spine; 2010 Jan; 12(1):59-65. PubMed ID: 20043766
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  • 27. The Spinal Cord Line Can Predict Postoperative Recovery for Multilevel Cervical Spondylotic Myelopathy.
    Tong MJ, Hu YB, Wang XY, Zhu SP, Tian NF, Fang MQ, Xu HZ, Xiang GH.
    World Neurosurg; 2017 Aug; 104():361-366. PubMed ID: 28478247
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  • 28. Predictors of surgical outcome in cervical spondylotic myelopathy.
    Karpova A, Arun R, Davis AM, Kulkarni AV, Massicotte EM, Mikulis DJ, Lubina ZI, Fehlings MG.
    Spine (Phila Pa 1976); 2013 Mar 01; 38(5):392-400. PubMed ID: 23448898
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  • 29. Functional cortical reorganization in cases of cervical spondylotic myelopathy and changes associated with surgery.
    Bhagavatula ID, Shukla D, Sadashiva N, Saligoudar P, Prasad C, Bhat DI.
    Neurosurg Focus; 2016 Jun 01; 40(6):E2. PubMed ID: 27246485
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  • 30. Surgical outcomes of laminoplasty for cervical spondylotic myelopathy in very elderly patients (older than 80 years): Time from symptom onset to surgery and changes in spinal cord signal intensity on MRI.
    Notani N, Miyazaki M, Kanezaki S, Ishihara T, Tsumura H.
    Clin Neurol Neurosurg; 2017 Sep 01; 160():78-82. PubMed ID: 28692908
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  • 31. The Significance of the Trömner Sign in Cervical Spondylotic Myelopathy Patient.
    Chaiyamongkol W, Laohawiriyakamol T, Tangtrakulwanich B, Tanutit P, Bintachitt P, Siribumrungwong K.
    Clin Spine Surg; 2017 Nov 01; 30(9):E1315-E1320. PubMed ID: 27404855
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  • 32. Improved Diagnosis of Cervical Spondylotic Myelopathy with Contact Heat Evoked Potentials.
    Jutzeler CR, Ulrich A, Huber B, Rosner J, Kramer JLK, Curt A.
    J Neurotrauma; 2017 Jun 15; 34(12):2045-2053. PubMed ID: 28260398
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  • 33. Prognostic value of changes in spinal cord signal intensity on magnetic resonance imaging in patients with cervical compressive myelopathy.
    Uchida K, Nakajima H, Takeura N, Yayama T, Guerrero AR, Yoshida A, Sakamoto T, Honjoh K, Baba H.
    Spine J; 2014 Aug 01; 14(8):1601-10. PubMed ID: 24411833
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  • 34. Modified K-line in magnetic resonance imaging predicts clinical outcome in patients with nonlordotic alignment after laminoplasty for cervical spondylotic myelopathy.
    Taniyama T, Hirai T, Yoshii T, Yamada T, Yasuda H, Saito M, Inose H, Kato T, Kawabata S, Okawa A.
    Spine (Phila Pa 1976); 2014 Oct 01; 39(21):E1261-8. PubMed ID: 25077905
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  • 35. The relationship between magnetic resonance imaging and quantitative electromyography findings in patients with compressive cervical myelopathy.
    Hattori S, Kawai K, Mabuchi Y, Shibayama M.
    Spine (Phila Pa 1976); 2010 Apr 15; 35(8):E290-4. PubMed ID: 20354473
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  • 36. Impact of dynamic alignment, motion, and center of rotation on myelopathy grade and regional disability in cervical spondylotic myelopathy.
    Liu S, Lafage R, Smith JS, Protopsaltis TS, Lafage VC, Challier V, Shaffrey CI, Radcliff K, Arnold PM, Chapman JR, Schwab FJ, Massicotte EM, Yoon ST, Fehlings MG, Ames CP.
    J Neurosurg Spine; 2015 Dec 15; 23(6):690-700. PubMed ID: 26315953
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  • 37. Prevalence and Imaging Characteristics of Nonmyelopathic and Myelopathic Spondylotic Cervical Cord Compression.
    Kovalova I, Kerkovsky M, Kadanka Z, Kadanka Z, Nemec M, Jurova B, Dusek L, Jarkovsky J, Bednarik J.
    Spine (Phila Pa 1976); 2016 Dec 15; 41(24):1908-1916. PubMed ID: 27509189
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  • 39. Correlation between magnetic resonance T2 image signal intensity ratio and cell apoptosis in a rabbit spinal cord cervical myelopathy model.
    Ma L, Zhang D, Chen W, Shen Y, Zhang Y, Ding W, Zhang W, Wang L, Yang D.
    Chin Med J (Engl); 2014 Dec 15; 127(2):305-13. PubMed ID: 24438621
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